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纳米纤维素:一项全面综述,探讨其作为水修复创新材料的潜力。

Nanocellulose: A comprehensive review investigating its potential as an innovative material for water remediation.

机构信息

Department of Environmental Science, Graphic Era Hill University, Dehradun, Uttarakhand, India.

Interdisciplinary Centre for Water Research, Indian Institute of Science, Bengaluru 560012, India.

出版信息

Int J Biol Macromol. 2024 Jan;254(Pt 3):127465. doi: 10.1016/j.ijbiomac.2023.127465. Epub 2023 Oct 20.

Abstract

Rapid growth in industrialization sectors, the wastewater treatment plants become exhausted and potentially not able to give desirable discharge standards. Many industries discharge the untreated effluent into the water bodies which affects the aquatic diversity and human health. The effective disposal of industrial effluents thus has been an imperative requirement. For decades nanocellulose based materials gained immense attraction towards application in wastewater remediation and emerged out as a new biobased nanomaterial. It is light weighted, cost effective, mechanically strong and easily available. Large surface area, versatile surface functionality, biodegradability, high aspect ratio etc., make them suitable candidate in this field. Majorly cellulose based nanomaterials are used in the form of cellulose nanocrystals (CNCs), cellulose nanofibers (CNFs), or bacterial nanocellulose (BNC). This review specifically describes about a variety of extraction methods to produced nanocellulose and also discusses the modification of nanocellulose by adding functionalities in its surface chemistry. We majorly focus on the utilization of nanocellulose based materials in water remediation for the removal of different contaminants such as dyes, heavy metals, oil, microbial colony etc. This review mainly emphasizes in ray of hope towards nanocellulose materials to achieve more advancement in the water remediation fields.

摘要

工业化部门的快速增长,使废水处理厂不堪重负,可能无法达到理想的排放标准。许多行业将未经处理的废水排放到水体中,这影响了水生生物多样性和人类健康。因此,有效处理工业废水已成为当务之急。几十年来,基于纳米纤维素的材料在废水修复中的应用引起了极大的关注,并成为一种新型的生物基纳米材料。它具有重量轻、成本效益高、机械强度高、易于获取等特点。大的比表面积、多功能的表面官能团、可生物降解性、高纵横比等特点,使它们成为该领域的合适候选材料。主要以纤维素为基础的纳米材料以纤维素纳米晶体(CNC)、纤维素纳米纤维(CNF)或细菌纳米纤维素(BNC)的形式使用。本文专门介绍了各种提取纳米纤维素的方法,并讨论了通过在表面化学中添加功能来修饰纳米纤维素。我们主要关注的是纳米纤维素基材料在水修复中用于去除不同污染物,如染料、重金属、石油、微生物菌落等方面的应用。本文主要强调了纳米纤维素材料在实现水修复领域更多进展方面的希望之光。

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